WO2003035323A1 - Support de piece - Google Patents
Support de piece Download PDFInfo
- Publication number
- WO2003035323A1 WO2003035323A1 PCT/JP2001/009235 JP0109235W WO03035323A1 WO 2003035323 A1 WO2003035323 A1 WO 2003035323A1 JP 0109235 W JP0109235 W JP 0109235W WO 03035323 A1 WO03035323 A1 WO 03035323A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- rod
- pressure
- pressurized air
- piston member
- air
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q11/00—Accessories fitted to machine tools for keeping tools or parts of the machine in good working condition or for cooling work; Safety devices specially combined with or arranged in, or specially adapted for use in connection with, machine tools
- B23Q11/08—Protective coverings for parts of machine tools; Splash guards
- B23Q11/0883—Protective coverings for parts of machine tools; Splash guards for spindles, e.g. for their bearings or casings
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q3/00—Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine
- B23Q3/02—Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine for mounting on a work-table, tool-slide, or analogous part
- B23Q3/10—Auxiliary devices, e.g. bolsters, extension members
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q11/00—Accessories fitted to machine tools for keeping tools or parts of the machine in good working condition or for cooling work; Safety devices specially combined with or arranged in, or specially adapted for use in connection with, machine tools
- B23Q11/0042—Devices for removing chips
- B23Q11/005—Devices for removing chips by blowing
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q3/00—Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine
- B23Q3/02—Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine for mounting on a work-table, tool-slide, or analogous part
- B23Q3/10—Auxiliary devices, e.g. bolsters, extension members
- B23Q3/106—Auxiliary devices, e.g. bolsters, extension members extendable members, e.g. extension members
- B23Q3/108—Auxiliary devices, e.g. bolsters, extension members extendable members, e.g. extension members with non-positive adjustment means
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F15—FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
- F15B—SYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
- F15B11/00—Servomotor systems without provision for follow-up action; Circuits therefor
- F15B11/02—Systems essentially incorporating special features for controlling the speed or actuating force of an output member
- F15B11/028—Systems essentially incorporating special features for controlling the speed or actuating force of an output member for controlling the actuating force
- F15B11/032—Systems essentially incorporating special features for controlling the speed or actuating force of an output member for controlling the actuating force by means of fluid-pressure converters
- F15B11/0325—Systems essentially incorporating special features for controlling the speed or actuating force of an output member for controlling the actuating force by means of fluid-pressure converters the fluid-pressure converter increasing the working force after an approach stroke
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F15—FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
- F15B—SYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
- F15B15/00—Fluid-actuated devices for displacing a member from one position to another; Gearing associated therewith
- F15B15/20—Other details, e.g. assembly with regulating devices
- F15B15/26—Locking mechanisms
- F15B15/262—Locking mechanisms using friction, e.g. brake pads
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F15—FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
- F15B—SYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
- F15B2211/00—Circuits for servomotor systems
- F15B2211/20—Fluid pressure source, e.g. accumulator or variable axial piston pump
- F15B2211/21—Systems with pressure sources other than pumps, e.g. with a pyrotechnical charge
- F15B2211/216—Systems with pressure sources other than pumps, e.g. with a pyrotechnical charge the pressure sources being pneumatic-to-hydraulic converters
Definitions
- the present invention relates to a work support of a type in which a rod is locked by elastically deforming an elastically deformable sleeve body with hydraulic pressure, and more particularly to a work support having a highly reliable support function.
- the sleeve body integral with or separate from the piston member is elastically deformed to the diameter reduction side by hydraulic pressure, and the rod is locked by the static friction force acting between the sleeve body and the rod. Structure.
- An object of the present invention is to provide a work support having a highly reliable support function by eliminating negative pressure in an oil chamber communicating with an outer peripheral hydraulic chamber. Disclosure of the invention
- a flex support includes: a rod; a sleeve body externally fitted to the rod and elastically deformable to a reduced diameter side; a case member supporting the sleeve body; A scraper that is held at the distal end of the case member in an outer fitting shape and that removes deposits on the outer peripheral surface of the rod when the rod returns to the original position, and an outer peripheral hydraulic chamber formed on the outer peripheral side of the sleeve body
- a pressure-increasing pressurizing unit that pressurizes the oil filled in the outer-peripheral-side hydraulic chamber with pressurized air via a pressure-increasing piston member, and between the rod and the inner peripheral surface of the sleeve body.
- An air passage which is formed and communicates with a gap between the rod and the scraper; and a pressurizing air supply means for supplying pressurized air to the air passage. And a plurality of grooves for an air passage leading from the pressurized air supply means to the air passage on at least one of the divided surfaces of the pressure-intensifying piston member. It is.
- the workpiece to be machined When the workpiece to be machined is received and supported by the workpiece support, the workpiece is set from above the workpiece support and fixed by a separately provided clamp device or the like. Thereafter, the rod is driven to advance, and the output section at the tip of the rod lightly abuts the work with a very weak force, and then the pressure-intensifying button member of the pressure-intensifying pressurizing means is slidably driven. As a result, the oil in the outer hydraulic chamber is pressurized, the sleeve body is elastically deformed to the reduced diameter side, and is firmly pressed against the rod to lock this rod, and the work is received and supported by this rod. Is done.
- the drive of the pressure-intensifying and pressurizing means is stopped, and the pressurized air is supplied to the air passage through a plurality of grooves by the pressurized air supply means. Squirt out of the gap.
- the pressurized air separates the input-side split body of the pressure-intensifying piston member from the output-side split body and slides and drives the output-side split body with a slight delay. Decrease. Then, the locked state of the rod is released, and the rod returns to the entering side.
- a work support is provided with a pressure increasing pressurizing means for pressurizing the oil filled in the outer peripheral side hydraulic chamber with pressurized air via a pressure increasing piston member, and attaching the rod to an advance side.
- a pressure receiving chamber for receiving pressurized air at a base end portion of the rod for energizing; and a pressurized air supply means for supplying pressurized air to the pressure receiving chamber.
- the pressure biston member may be configured to have a divided structure that is divided transversely, and a plurality of grooves for an air passage communicating from the pressurized air supply means to the pressure receiving chamber may be formed on at least one of the divided surfaces of the pressure boosted piston member. .
- the input side divided body of the pressure-intensifying bolt member is divided by the output side by the pressurized air supplied by the pressurized air supply means.
- the output side split body moves with a slight delay after sliding away from the body.
- air working chambers may be respectively formed on the upper and lower sides of the pressure-intensifying biston member of the pressure-increasing pressure means. In this case, by supplying pressurized air to the lower air working chamber, the input-side split body and the output-side split body of the booster piston member are integrally driven upward, and the oil in the outer circumferential hydraulic chamber is Is pressurized.
- the pressure-increasing pressurizing means may be configured to have an annular oil chamber communicating with the hydraulic pressure chamber on the inner peripheral side of the pressure-intensifying piston member.
- the pressure of the outer peripheral hydraulic chamber can be controlled by slidingly driving the pressure-intensifying piston member to increase or decrease the volume of the annular oil chamber.
- the work support can be provided with a compression coil panel that drives the rod to advance. Further, a coil panel for driving the rod to return can be provided.
- FIG. 1 is a front view of a work support and a cutout of a main part of a work according to an embodiment of the present invention.
- Figure 2 is a longitudinal sectional view of the work support (during the rod return operation).
- Fig. 3 is a vertical sectional view of the work support (locked state).
- Figure 4 is a longitudinal sectional view of the work support (unlocked state).
- FIG. 5 is a longitudinal sectional view of a modified work support (unlocked state).
- the work support 1 of the present embodiment supports the center of the work 2 to be machined from below to prevent elastic deformation and vibration of the work 2. .
- the work support 1 includes a substantially cylindrical case member 3, a rod 4, an air cylinder 5 for driving the rod 4, a pressurized air supply mechanism 6, and a compression It has coil panels 7 and 8, a sleeve body 9 slidably fitted on the rod 4, and a pressurizing and pressurizing mechanism 11 for pressurizing oil via pressurized viston members 10 by pressurized air. .
- the case member 3 is for mounting and supporting the rod 4 and the sleeve body 9, and includes an auta case 12 with both ends open, a bottom case 13, and an inner case. Consists of 14 mag.
- a bottom case 13 is internally screwed into the lower end of the outer case 12, and air input ports 15, 16, and 17 are formed in the bottom case 13.
- An inner case 14 is screwed into the upper end of the outer case 12, and a sleeve body receiving hole 18 is formed on the inner peripheral side of the inner case 14, and the scraper 19 and the sealing members 20, 2 are formed. 1 is installed.
- the scraper 19 made of synthetic resin is fitted to the mouth 4 so as to be fitted externally to the upper end of the inner case 14.
- a sharp tip 19a is formed, which is held by the wall and removes deposits on the outer peripheral surface of the rod 4 when the rod 4 returns.
- the large diameter portion 26 and the small diameter portion 27 in the lower half of the inner case 14 are formed on the same axis.
- a plurality of horizontal communication passages 28 are formed in the wall near the step between the large-diameter portion 26 and the small-diameter portion 27.
- a part of the connection member 10 is slidably fitted to the outside.
- the seal members 25a, 25b, 25c are also provided.
- the rod 4 As shown in FIGS. 2 to 4, the rod 4 is slidably inserted into the sleeve body 9, and the lower half of the rod 4 has approximately 2/5 of the total length of the rod 4 from the lower end.
- a cylindrical hole 29 having a length is formed, and a cylindrical hole 31 smaller in diameter than the cylindrical hole 29 is formed in the upper half of the rod 4 with an intermediate wall portion 30 interposed therebetween.
- the cylinder body 32 of the air cylinder 5 is fitted in the cylindrical hole 29, and the rod 4 is guided by the sleeve body 9 and the cylinder body 32 and is configured to be slidable up and down.
- the output part 33 is screwed and fixed to the upper end of the rod 4, and the output part 33 contacts the work 2 when supporting the work 2.
- the sleeve body 9 is composed of an outer metal sleeve 34 and an inner synthetic resin sleeve 35 inside, and the inner sleeve 35 is slidably fitted to the rod 4 with almost no clearance. ing.
- the stator sleeve 34 has an upper fixing ring 36, a thin-walled cylinder 37, and a lower fixing ring 38 formed in this order from the upper part to the lower part.
- the fixed ring lower part 38 is formed integrally.
- the upper portion 36 of the fixing ring is locked from above from the upper end wall of the inner case 14, and the upper end of the inner sleeve 35 is locked from above by the scraper 19.
- the fixing ring lower part 38 is integrally engaged with the flange 35 a formed at the lower end of the inner sleeve 35, and the flange 35 a and the fixing ring lower part 38 are connected to the inner case 14 and the air. It is clamped between the cylinder 5 and fixed.
- the thin-walled cylindrical portion 37 is configured to be elastically deformable to a smaller diameter side, and an annular outer-side hydraulic chamber 39 is formed on the outer peripheral side of the thin-walled cylindrical portion 37.
- the outer side hydraulic chamber 39 contains oil filled from a plurality of filling ports 40 formed in the upper end wall of the inner case 14.
- An air passage 41 is formed between the rod 4 and the inner peripheral surface of the inner sleeve 35, and a pressure higher than the contact pressure of the scraper 19 (for example, 0.1 mm) is supplied from the air input port 17 to the air passage 41.
- a pressurized air of 0 2 MPa) is supplied, and the pressurized air is supplied to the minute gap 5 between the rod 4 and the scraper 19 through the air passage 41 to be ejected to the outside.
- the air cylinder 5 has a cylinder body 32 and a piston member 42, as shown in FIGS.
- a flange portion 43 is formed at an intermediate portion in the longitudinal direction of the outer periphery of the cylinder body 32, and the flange portion 43 is screwed into the lower end portion of the inner case 14.
- the flange portion 43 has a plurality of vertical communication passages 43 a that guide the pressurized air supplied to the air working chamber 44 a by the pressurized air supply mechanism 6 to the air passage 41.
- the cylinder body 32 is formed with a cylinder hole 45 also serving as a panel receiving hole, and a piston member 42 is slidably mounted in the cylinder hole 45.
- An opening 47 is formed in the upper wall 46 of the upper end of the cylinder body 32.
- the air working chamber 48 of the air cylinder 5 is defined by the inner peripheral surface of the cylinder hole 45, the piston member 42, and the bottom case 13 and an air input port 1 from a pressurized air supply source (not shown). The pressurized air is supplied to the air working chamber 48 through the 5 and the piston member 4 is slidably driven upward.
- a sealing member 49 is also provided.
- the cylinder hole 45 accommodates a compression coil panel 7 for elastically urging the piston member 42 and the rod 4 downward.
- the lower end of the compression coil panel 7 is received by the piston element 42, and the upper end of the compression coil panel 7 is received by the upper wall 46.
- An upright piston rod 50 is physically connected to the piston member 42, and the piston rod 50 is composed of a large diameter portion 50a and a small diameter portion 5Ob, and a small diameter portion 5Ob.
- a shaft member 51 with a flange is screwed to the upper end.
- the small diameter portion 5 Ob extends through the opening 47 of the upper wall portion 46 and the center hole of the intermediate wall portion 30 into the cylindrical hole 31, and the shaft member 51 extends above the intermediate wall portion 30. It is inserted into the cylindrical hole 31 so that it can move up and down.
- the lower end of the compression coil panel 8 for driving the rod 4 to advance is received by the flange 51 a of the shaft member 51, and the upper end of the compression coil spring 8 is screwed and fixed to the upper end of the mouth 4.
- the rod 4 is received by the output member 33, and the rod 4 is elastically urged upward.
- the rod 4 is lifted up against the weight of the rod 4 so that the rod 4 comes into contact with the work 2 with a very weak urging force such that the work 2 is hardly elastically deformed.
- the biasing force of the compression coil panel 8 (that is, panel length and panel constant) is set so that it can be driven.
- the pressure increasing and pressurizing mechanism 11 As shown in FIGS. 2 to 4, the annular space defined by the outer case 12, the inner case 14, the cylinder body 32, and the bottom case 13 has a booster / pressurizing mechanism 11.
- a booster biston member 10 is provided so that it can slide up and down freely.
- the pressure-increasing piston member 10 has a first piston member 52 that forms the upper half and a second piston member 53 that forms the lower half, and is configured in a transversely divided structure.
- An air working chamber 44 b is formed above the pressure piston member 10, and an air working chamber 44 c is formed below the pressure boosting piston member 10.
- the lower surface of the first piston member 52 has an air passage 4 via a pressurized air supply source, an air working chamber 44a, and a plurality of communication passages 43a.
- a plurality of grooves 54 for the air passage leading to 1 are formed.
- the upper end of the first piston member 52 is slidably fitted to the large diameter portion 26 of the inner case 14, and the lower end is slidably fitted to the small diameter portion 27 of the inner case 14.
- the seal members 55 and 56 are also fitted.
- an annular oil chamber 57 communicating with the outer hydraulic chamber 39 via a plurality of communication passages 28 is formed on the inner peripheral side of the first piston member 52.
- the second piston member 53 has a large-diameter portion 58 formed in the upper half, and a small-diameter portion 59 formed in the lower half and integrally connected to the large-diameter portion 58.
- the outer peripheral surface of the large diameter portion 58 is slidably fitted inside the bottom case 13 and the inner peripheral surface of the small diameter portion 59 is a cylinder.
- An air working chamber 44a is defined by the cylinder main body 32 and the second piston member 53 mainly slidably fitted to the main body 32. Seal members 60 and 61 are also provided.
- the pressurized air is supplied from the pressurized air supply source to the air input port 16, and the first and second piston members 52, 53 are integrally driven upward, so that the volume of the annular oil chamber 57 is increased. In this configuration, oil in the outer hydraulic chamber 39 is pressurized.
- the pressurized air supply mechanism 6 that supplies pressurized air to the air passage 41 includes a pressurized air supply source, an air input port 17, a plurality of passages 62, 63, 64, and a groove 54. , Air—passage 41 consisting of 1 etc.
- Air—passage 41 consisting of 1 etc.
- an oblique passage 62 extending upward from the air input port 17, an annular passage 63, and a groove-like passage 64 partially formed in the thread portion of the bottom case 13 are formed. Have been.
- Pressurized air is supplied from the pressurized air supply source to the air input port 17, passes through the oblique passage 62, the annular passage 63, and the groove-like passage 64, passes through the plurality of grooves 54, and passes through the plurality of communication passages
- the air is supplied to the air passage 41 via 43a.
- pressurized air is supplied from the pressurized air supply source to the air working chamber 48 through the air input port 15 to drive the air cylinder 5 I do.
- the piston member 42, the piston rod 50 and the shaft member 51 force are piled by the biasing force of the compression coil panel 7 and are slid upward, whereby the compression coil panel 8 contracts.
- the urging force is slightly increased, and the mouth 4 is moved upward by the weak urging force of the compression coil panel 8.
- the pressure-increasing pressure member 11 is slidably driven by the pressure-intensifying member 10. I do.
- pressurized air is supplied to the air input port 16 from a pressurized air supply source, and the first and second piston members 52, 53 are integrally driven upward to form a ring.
- Oil chamber 5 Decrease the volume of 7.
- the oil in the outer peripheral side hydraulic chamber 39 is pressurized, and the thin-walled cylinder portion 37 of the outer sleeve 34 is elastically deformed to the reduced diameter side, and the inner sleeve 35 is firmly pressed against the rod 4.
- the lever 4 is locked, and the work 2 is received by the rod 4 and supported. In such a state, the work 2 is supported by one or a plurality of work supports 1, the clamp device is operated as necessary to clamp the work 2, and machining is performed in that state.
- pressurized air with a pressure higher than the contact pressure of the scraper 19 (for example, 0.02 MPa) is passed through the oblique passage 6 1, the annular passage 63, the grooved passage 64, and the plurality of grooves 54, and The air is supplied to the air passage 41 via the working chamber 44 a and the plurality of communication passages 43 a, and is ejected from the minute gap 5 between the rod 4 and the scraper 19.
- the scraper 19 removes most of the deposits such as cutting oil, fine chips, dust, etc. attached to the outer peripheral surface of the rod 4.
- the deposits separated from the surface of 4 are surely blown off by the pressurized air jet 65 that is jetted from the small gap ⁇ 5.
- the pressurized air also causes the second piston member 53 to separate from the first piston member 52 and slide down, and the first piston member 52 resiliently moves the elastic member of the sleeve body 9 slightly later. It moves downward by return.
- the volume of the annular oil chamber 57 increases, and the hydraulic pressure of the outer hydraulic chamber 39 decreases.
- the piston member 42, the piston rod 50 and the shaft member 51 retreat downward by the urging force of the compression coil panel 7, and the flange 5 1 a comes into contact with the intermediate wall portion 30, and as shown in FIG. 2, the rod 4 also returns downward in conjunction with the downward return movement of the shaft member 51.
- the pressure-intensifying piston member 10 is formed in a divided structure in which it is divided transversely, and the lower surface of the second piston member 52 is provided with a pressurized air supply source.
- the pressure boost piston member 10 When the pressure boost piston member 10 is slid downward, first pressurize only the second piston member 53. The first sliding member 5 is forcibly driven to slide by air, and then the first piston member 5 is returned downward.
- the annular oil chamber 57 does not become negative pressure, and it is possible to prevent air and pressurized air from entering the annular oil chamber 57 and the outer peripheral hydraulic chamber 39.
- the compressive gas does not enter the outer peripheral side hydraulic chamber 39, the oil in the outer peripheral side hydraulic chamber 39 can be reliably pressurized, and the rod 4 is securely locked to support the work 1. be able to.
- the rod 4 and the pressure-intensifying piston member 10 can be driven only by the pressurized air and the compression coil panels 7, 8, a hydraulic supply unit is not required, and the equipment cost can be reduced.
- the same members as those of the above-described embodiment are denoted by the same reference numerals, and the description will be appropriately omitted.
- the annular pressure A chamber 70 is formed, and the pressure receiving chamber 70 is defined by a lower half of the rod 4, a sleeve body 9, and a substantially cylindrical rod support member 71.
- a pressurized air supply mechanism 72 for supplying pressurized air to the pressure receiving chamber 70 is also provided.
- a flange portion 73 is formed at the lower end of the rod support member 71, and the flange ⁇ P 73 is screwed into the lower end of the inner case 14.
- the flange portion 73 has a plurality of vertical communication paths 73a for guiding the pressurized air supplied from the pressurized air supply mechanism 72 to the air working chamber 44a to the pressure receiving chamber 70.
- a rod accommodation hole 74 is formed in the rod support member 71, and is configured to guide the center shaft 75 of the second piston member 53A so as to be vertically slidable.
- a shaft portion 7 is formed at the upper end of the mouth support member 71 via a tapered portion 76, and the shaft member 51 is screwed to the upper end of the shaft portion 77.
- a part of the shaft portion 77 extends through the center hole of the intermediate wall portion 30 into the cylindrical hole 31, and the shaft member 51 is inserted into the cylindrical hole 31.
- the compression coil panels 7 and 8 for returning drive of rod 4 The lower end is fixed to the flange 51 a of the shaft member 51, the upper end of the compression coil panel 78 is fixed to the output member 33 of the mouth 4, and elastically urges the rod 4 downward.
- the work 2 When the work 2 is supported by the work sabot 1A, the work 2 is set from above the work sabot 1A and fixed by a clamp device, and then the air input port 1 is supported. Supply pressurized air to 7 and let the base end side of port 4 receive pressure. As a result, the rod 4 advances upward against the urging force of the compression coil panel 78 for driving the rod 4 to return, and the output portion 33 at the tip of the rod 4 lightly contacts the work 2 with a weak force. .
- pressurized air is supplied to the air input port 16 from the pressurized air supply source, and the first and second biston members 52, 53A are integrally slidably driven upward, thereby causing the annular oil chamber 5 7
- mechanical machining is performed.
- pressurized air passes through the oblique passage 61, the annular passage 63, the grooved passage 64, and the plurality of grooves 54, and flows through the air working chamber 44a and the plurality of communication passages 43a.
- the yarn feeder is placed in one passageway 41, and is ejected from the minute gap 5 between the rod 4 and the scraper 19, so that cutting oil, minute chips, It is possible to prevent dust and the like from entering.
- a plurality of grooves for an air passage can also be formed on the upper surface of the second piston member, and a plurality of grooves are formed only in one of the first piston member and the second piston member. You may.
- sleeve body a single metal sleeve body without the synthetic resin inner sleeve can be used.
- various modifications can be made to the above embodiments without departing from the spirit of the present invention.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Physics & Mathematics (AREA)
- Fluid Mechanics (AREA)
- General Engineering & Computer Science (AREA)
- Actuator (AREA)
Abstract
Priority Applications (6)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2000271412A JP2002079433A (ja) | 2000-09-07 | 2000-09-07 | ワークサポート |
| PCT/JP2001/009235 WO2003035323A1 (fr) | 2000-09-07 | 2001-10-19 | Support de piece |
| EP01976789A EP1445064A1 (fr) | 2001-10-19 | 2001-10-19 | Support de piece |
| KR10-2004-7005698A KR20040045861A (ko) | 2001-10-19 | 2001-10-19 | 가공물 서포트 |
| CNA018237274A CN1558809A (zh) | 2001-10-19 | 2001-10-19 | 工件支架 |
| TW090127284A TW552353B (en) | 2001-10-19 | 2001-11-02 | Work support |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2000271412A JP2002079433A (ja) | 2000-09-07 | 2000-09-07 | ワークサポート |
| PCT/JP2001/009235 WO2003035323A1 (fr) | 2000-09-07 | 2001-10-19 | Support de piece |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2003035323A1 true WO2003035323A1 (fr) | 2003-05-01 |
Family
ID=31742918
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2001/009235 Ceased WO2003035323A1 (fr) | 2000-09-07 | 2001-10-19 | Support de piece |
Country Status (5)
| Country | Link |
|---|---|
| EP (1) | EP1445064A1 (fr) |
| KR (1) | KR20040045861A (fr) |
| CN (1) | CN1558809A (fr) |
| TW (1) | TW552353B (fr) |
| WO (1) | WO2003035323A1 (fr) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20170057030A1 (en) * | 2015-09-01 | 2017-03-02 | Vektek, Inc. | Clamping mechanism for hydraulic work support |
Families Citing this family (10)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP4406886B2 (ja) * | 2005-07-07 | 2010-02-03 | Smc株式会社 | 流体圧機器に用いられるロック機構 |
| CN100500368C (zh) * | 2006-02-24 | 2009-06-17 | 鸿富锦精密工业(深圳)有限公司 | 一种治具 |
| ITPD20110097A1 (it) * | 2011-03-29 | 2012-09-30 | Brawo Spa | Dispositivo e metodo per il supporto di pezzi da lavorare in macchine utensili di tipo transfer |
| CN103100888B (zh) * | 2013-02-27 | 2015-08-05 | 浙江吉利汽车研究院有限公司杭州分公司 | 液压浮动支承装置及其支承方法 |
| JP6222688B2 (ja) * | 2013-04-15 | 2017-11-01 | パスカルエンジニアリング株式会社 | 位置決め装置 |
| KR101675699B1 (ko) | 2015-11-10 | 2016-11-11 | 김양우 | 가공물 고정용 서포트 장치 |
| CN105855928B (zh) * | 2016-06-08 | 2018-01-02 | 长春市宏顺汽车配件有限责任公司 | 液压浮动工件支承 |
| KR102550086B1 (ko) * | 2019-08-30 | 2023-06-30 | 가부시키가이샤 코스멕 | 워크 서포트 |
| CN112247875A (zh) * | 2020-10-12 | 2021-01-22 | 浙江丰州精密制造有限公司 | 一种带真空吸附的支撑杆组件 |
| CN116357630A (zh) * | 2023-05-08 | 2023-06-30 | 王志伟 | 一种缸内增压型气动支撑缸 |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4934672A (en) * | 1989-02-08 | 1990-06-19 | Vektek, Inc. | Locking cylinder hydraulic work support |
| US5957443A (en) * | 1998-07-20 | 1999-09-28 | Vektek, Inc. | Hydraulic work support |
| JP2000240611A (ja) * | 1999-02-24 | 2000-09-05 | Pascal Kk | 油圧式ロック装置 |
| JP2001271809A (ja) * | 2000-03-24 | 2001-10-05 | Pascal Kk | 油圧式ロック装置 |
-
2001
- 2001-10-19 CN CNA018237274A patent/CN1558809A/zh active Pending
- 2001-10-19 EP EP01976789A patent/EP1445064A1/fr not_active Withdrawn
- 2001-10-19 WO PCT/JP2001/009235 patent/WO2003035323A1/fr not_active Ceased
- 2001-10-19 KR KR10-2004-7005698A patent/KR20040045861A/ko not_active Abandoned
- 2001-11-02 TW TW090127284A patent/TW552353B/zh not_active IP Right Cessation
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4934672A (en) * | 1989-02-08 | 1990-06-19 | Vektek, Inc. | Locking cylinder hydraulic work support |
| US5957443A (en) * | 1998-07-20 | 1999-09-28 | Vektek, Inc. | Hydraulic work support |
| JP2000240611A (ja) * | 1999-02-24 | 2000-09-05 | Pascal Kk | 油圧式ロック装置 |
| JP2001271809A (ja) * | 2000-03-24 | 2001-10-05 | Pascal Kk | 油圧式ロック装置 |
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20170057030A1 (en) * | 2015-09-01 | 2017-03-02 | Vektek, Inc. | Clamping mechanism for hydraulic work support |
| US10799992B2 (en) * | 2015-09-01 | 2020-10-13 | Vektek, Inc. | Clamping mechanism for hydraulic work support |
| EP3344410B1 (fr) * | 2015-09-01 | 2021-12-15 | Vektek LLC | Mécanisme de serrage pour support de travail hydraulique |
| US11478888B2 (en) * | 2015-09-01 | 2022-10-25 | Vektek, Inc. | Clamping mechanism for hydraulic work support |
Also Published As
| Publication number | Publication date |
|---|---|
| KR20040045861A (ko) | 2004-06-02 |
| TW552353B (en) | 2003-09-11 |
| EP1445064A1 (fr) | 2004-08-11 |
| CN1558809A (zh) | 2004-12-29 |
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